View clinical trials related to Inflammatory Response.
Filter by:Cardiometabolic disorders are a leading cause of death worldwide. Replacing saturated fatty acids (SFA) with unsaturated fatty acids is recommended as a way of lowering cardiometabolic disease risk. Consuming a diet rich in SFA may lead to a greater metabolic-inflammatory response in white adipose tissue during the fasting state, when compared to eating a diet rich in monounsaturated fatty acids (MUFA). Since individuals spend most of the day in the fed (or postprandial) state, it is important to see how different types of dietary fatty acids affect postprandial white adipose tissue and systemic metabolic-inflammatory responses. This study will investigate the effect of a SFA-rich meal on markers of white adipose tissue and systemic metabolic-inflammation, compared to a MUFA-rich meal in overweight adults. In a randomised, single blind controlled, cross-over manner participants will consume either a SFA- or MUFA-rich meal and sequential blood and white adipose tissue samples will be collected before and until 6 hours postprandially.
DESIGN: exploratory, prospective, natural history, imaging cohort study BACKGROUND: Stroke causes a strong inflammatory response in the brain which is thought to contribute to permanent brain damage in stroke patients. To develop new therapies targeting inflammation we need to better understand how inflammation affects the injured brain tissue and how it relates to neurological deficits that directly affect the patients' quality of life. AIMS: To track the extent and location of inflammation in the brain after stroke over a period of 90 days. The study will explore whether the most inflamed areas in the brain undergo the most damage after stroke and correspond to the cognitive and neurological deficits experienced by stroke patients. METHODS: The study involves an initial screening visit and 2 study imaging visits at days 15 and 90 after the stroke episode. Patients will undergo: 1. Two 90-minute brain imaging sessions using Positron Emission Tomography (PET) (involves injection of safe radiotracers which attach to brain immune cell markers TSPOs and light up the inflamed areas in the brain), 2. Two 45-90 minute Magnetic Resonance Imaging (MRI) scanning sessions (include administration of safe chemical contrast agent Gadolinium), 3. Physical and neurological examinations (vital signs, assessments of mobility and cognitive functioning), 4. Blood testing (routine measurements, blood inflammation markers, and genetic testing for TSPO marker). Venous cannula will be inserted into the forearm for the duration of the scans. POPULATION: 15- 25 patients (recruitment will cease once 15 patients have completed the study) ELIGIBILITY: Male and female stroke patients, aged 18-85, with a recent (within last 10 days) ischemic stroke of moderate severity, able and willing to provide informed consent LOCATION: Patients will be recruited at the Charing Cross Hospital, Imperial College Healthcare NHS Trust, and study scans will be performed by Invicro Centre for Imaging Sciences, Hammersmith Hospital DURATION: 18 months FUNDED BY: Biogen Idec Ltd
Obesity is recognized as a pro-inflammatory condition associated with multiple chronic diseases, including asthma. The specific mechanisms linking asthma and obesity remain hypothetical. Our primary hypothesis is that inflammatory SNPs may regulate the degree of the inflammatory response, with obesity modifying the severity of the disease. In this instance, asthma that develops in the context of obesity demonstrates the potential deleterious relationship between a specific proinflammatory state (obesity) and the genetic regulators of inflammation (SNPs). Our secondary hypothesis proposes that short-term (12-weeks) weight loss by diet alone, but not exercise alone, will reduce lung specific inflammation and diminish the pro-inflammatory responses in female African American obese adolescents with asthma compared to a waiting list control group who after their initial 12 weeks then receive a combined 12-week diet plus exercise program (waiting list control/combined). A third exploratory hypothesis proposes that the frequency of identified SNPs will be significantly related to the amount of fat loss through diet, exercise or combined program and will further be mediated by specific airway and, pro-and-anti-inflammatory markers.These hypotheses will be tested using the following Specific Aims: 1. To determine the frequency of single nucleotide polymorphisms and SNP haplotypes in pro- and anti-inflammatory genes in female African American obese and non-obese asthmatic and non-asthmatic adolescents, 13-19 years or age. 2. To examine the effects of diet or exercise on lung specific inflammation (exhaled nitric oxide, [eNO]) and pro-and-anti-inflammatory responses in female African-American obese asthmatic and non-asthmatic adolescents compared to a waiting list control/ combined group. In addition we will examine the following Exploratory Aim: To determine the effects of the inflammatory SNPs in the modulation of several inflammatory markers and lung specific inflammation (eNO) in female African-American obese asthmatic and non-asthmatic adolescents before and after weight loss through diet, exercise or both.
The stress response to surgery is a result of tissue injury with local and systemic inflammation that contributes to the postoperative outcome. Anesthesia is known to effect perioperative stress response Regional anesthesia modifies stress response through afferent blockage whereas general anesthesia affects the stress response via central modulation. High sensitive C-reactive protein and neutrophil to lymphocyte ratio are used for evaluation of inflammation. The aim of this study was to document the value hs-CRP and NLR in perioperative stress response in two different anesthesia methods applied to term pregnant women undergoing elective ceserean section (C/S).
This study will investigate the effect of a 7-day westernised high-fat (65% of kilocalories), high-calorie (150% of requirements) diet on markers of inflammation in the blood and white adipose tissue. Participants will firstly complete a 3-day weight maintenance phase (Days 1-3) before completing a 7-day high fat diet intervention (Days 4-10). On days 4 and 11 participants will complete a laboratory visit where anthropometric measurements, blood and adipose samples will be collected. The investigators hypothesise that consuming a high-fat, high-calorie diet for 7 days will alter the inflammatory responses in white adipose tissue and will induce metabolic endotoxaemia / systemic inflammation.
To investigate the effect of digoxin on pyruvate kinase isoform 2 (PKM2) binding to pro-inflammatory loci and innate immune inflammatory responses in the peripheral blood in healthy subjects.
This project examines the effects of cannabis on cognition and other domains of function and whether those effects are dependent upon the ratio of THC to CBD in the product. Current cannabis users are asked to stop using their typical product and to use cannabis containing different ratios of the cannabinoids THC and CBD. Participants complete baseline assessments including cognitive tasks, clinical measures, substance use history, and blood draw. Participants then acquire and use their study strain on their own, and after a period of use the mobile pharmacology laboratory goes to a location of their choosing. They complete cognitive, motor and blood-based assessments, then leave the mobile lab to use their study product one last time, returning to the mobile lab to complete cognitive, motor, and blood-based assessments immediately after use and one hour after use. A small subset of participants complete all of these procedures but use edible as opposed to flower-based products.
This study investigates whether the anxiolytic effects and anti-inflammatory properties of cannabis vary as a function of the ratio of CBD to THC, with the goal that these effects may shed light on the mixed data linking cannabis use and anxiety. Individuals with mild to moderate anxiety who elect to use cannabis (smoked flower or edible) will complete four weeks of observation. Participants complete cognitive tasks, a substance use history, health questionnaires concerning sleep and physical activity, and a blood draw at four different time points (Baseline, after 2 weeks of cannabis use, and immediately before and after self-administration after 4 weeks of use) with the use of a mobile pharmacology laboratory, which goes to a convenient location for each participant to self-administer their cannabis. Participants are then followed for five months to self-report on cannabis use, anxiety, subjective cognitive functioning, sleep quality, and other mental health symptoms.
High-risk abdominal surgery is frequently complicated by postoperative complications, such as sepsis, pneumonia or anastomotic dehiscence. Asymptomatic myocardial injury after abdominal surgery (MINS) predicts non-cardiac complications. The etiology of MINS in abdominal surgery patients is unknown. Remote ischemic preconditioning (RIPC) is a physiologic mechanism that exposes tissues to brief periods of non-lethal ischemia and reperfusion, creating resistence for future serious ischemic insults. RIPC in patients after cardiac or aortic surgery is associated with a protective effect on the heart. The effect of RIPC in abdominal surgery patients is unknown. Objective of the study: To determine the effect of RIPC on MINS in patients after pancreatic sugery. Study design: Randomised controlled parallel group mono-center pilot study. Study population: 90 adult patients scheduled for elective pancreaticoduodenectomy in St. Antonius Hospital (45 in the intervention group and 45 in the control group). Intervention: RIPC: 3 periods of 5 minutes of ischemia followed by 5 minutes of reperfusion are created by inflating a blood pressure cuff on the upper extremity after induction of anesthesia and prior to surgery. In the control group a non-inflated blood pressure cuff is placed on the upper extremity for 30 minutes. Primary study parameters/outcome of the study: Maximum postoperative concentration of high-sensitive cardiac troponin T. Secondary study parameters/outcome of the study: Markers of inflammatory, intestinal and renal injury, postoperative complications during 30 days, length of stay and hospital mortality.
The PURPOSE of this study is to investigate the combined influence of 2-weeks blueberry ingestion and banana ingestion (during exercise) on performance and in mitigating metabolic perturbation, immune dysfunction, and increase in inflammation following a 75-km cycling time trial. We hypothesize that the combination of 2-weeks ingestion of blueberries (versus placebo) and acute ingestion of bananas (versus water alone) during 75-km cycling will: 1. Enhance performance. 2. Attenuate the magnitude of metabolic perturbation due to exercise (using a targeted panel of metabolites) which may be associated with increased plasma levels of beneficial gut-derived phenolics. 3. Attenuate post-exercise inflammation (as measured with cytokines, muscle damage markers, regulatory lipid mediators, ex-vivo monocyte cell cultures, and targeted immune proteins including S100A8 and S100A12). 4. Counter post-exercise downturns in innate immune function (natural killer cell lytic activity), and viral defense (using an ex-vivo cell culture with Hela cells).